mmc: dw_mmc: Fix PIO mode with support of highmem
Current PIO mode makes a kernel crash with CONFIG_HIGHMEM. Highmem pages have a NULL from sg_virt(sg). This patch fixes the following problem. Unable to handle kernel NULL pointer dereference at virtual address 00000000 pgd = c0004000 [00000000] *pgd=00000000 Internal error: Oops: 817 [#1] PREEMPT SMP Modules linked in: CPU: 0 Not tainted (3.0.15-01423-gdbf465f #589) PC is at dw_mci_pull_data32+0x4c/0x9c LR is at dw_mci_read_data_pio+0x54/0x1f0 pc : [<c0358824>] lr : [<c035988c>] psr: 20000193 sp : c0619d48 ip : c0619d70 fp : c0619d6c r10: 00000000 r9 : 00000002 r8 : 00001000 r7 : 00000200 r6 : 00000000 r5 : e1dd3100 r4 : 00000000 r3 : 65622023 r2 : 0000007f r1 : eeb96000 r0 : e1dd3100 Flags: nzCv IRQs off FIQs on Mode SVC_32 ISA ARM Segment xkernel Control: 10c5387d Table: 61e2004a DAC: 00000015 Process swapper (pid: 0, stack limit = 0xc06182f0) Stack: (0xc0619d48 to 0xc061a000) 9d40: e1dd3100 e1a4f000 00000000 e1dd3100 e1a4f000 00000200 9d60: c0619da4 c0619d70 c035988c c03587e4 c0619d9c e18158f4 e1dd3100 e1dd3100 9d80: 00000020 00000000 00000000 00000020 c06e8a84 00000000 c0619e04 c0619da8 9da0: c0359b24 c0359844 e18158f4 e1dd3164 e1dd3168 e1dd3150 3d02fc79 e1dd3154 9dc0: e1dd3178 00000000 00000020 00000000 e1dd3150 00000000 c10dd7e8 e1a84900 9de0: c061e7cc 00000000 00000000 0000008d c06e8a84 c061e780 c0619e4c c0619e08 9e00: c00c4738 c0359a34 3d02fc79 00000000 c0619e4c c05a1698 c05a1670 c05a165c 9e20: c04de8b0 c061e780 c061e7cc e1a84900 ffffed68 0000008d c0618000 00000000 9e40: c0619e6c c0619e50 c00c48b4 c00c46c8 c061e780 c00423ac c061e7cc ffffed68 9e60: c0619e8c c0619e70 c00c7358 c00c487c 0000008d ffffee38 c0618000 ffffed68 9e80: c0619ea4 c0619e90 c00c4258 c00c72b0 c00423ac ffffee38 c0619ecc c0619ea8 9ea0: c004241c c00c4234 ffffffff f8810000 0000006d 00000002 00000001 7fffffff 9ec0: c0619f44 c0619ed0 c0048bc0 c00423c4 220ae7a9 00000000 386f0d30 0005d3a4 9ee0: c00423ac c10dd0b8 c06f2cd8 c0618000 c0594778 c003a674 7fffffff c0619f44 9f00: 386f0d30 c0619f18 c00a6f94 c005be3c 80000013 ffffffff 386f0d30 0005d3a4 9f20: 386f0d30 0005d2d1 c10dd0a8 c10dd0b8 c06f2cd8 c0618000 c0619f74 c0619f48 9f40: c0345858 c005be00 c00a2440 c0618000 c0618000 c00410d8 c06c1944 c00410fc 9f60: c0594778 c003a674 c0619f9c c0619f78 c004a7e8 c03457b4 c0618000 c06c18f8 9f80: 00000000 c0039c70 c06c18d4 c003a674 c0619fb4 c0619fa0 c04ceafc c004a714 9fa0: c06287b4 c06c18f8 c0619ff4 c0619fb8 c0008b68 c04cea68 c0008578 00000000 9fc0: 00000000 c003a674 00000000 10c5387d c0628658 c003aa78 c062f1c4 4000406a 9fe0: 413fc090 00000000 00000000 c0619ff8 40008044 c0008858 00000000 00000000 Backtrace: [<c03587d8>] (dw_mci_pull_data32+0x0/0x9c) from [<c035988c>] (dw_mci_read_data_pio+0x54/0x1f0) r6:00000200 r5:e1a4f000 r4:e1dd3100 [<c0359838>] (dw_mci_read_data_pio+0x0/0x1f0) from [<c0359b24>] (dw_mci_interrupt+0xfc/0x4a4) [<c0359a28>] (dw_mci_interrupt+0x0/0x4a4) from [<c00c4738>] (handle_irq_event_percpu+0x7c/0x1b4) [<c00c46bc>] (handle_irq_event_percpu+0x0/0x1b4) from [<c00c48b4>] (handle_irq_event+0x44/0x64) [<c00c4870>] (handle_irq_event+0x0/0x64) from [<c00c7358>] (handle_fasteoi_irq+0xb4/0x124) r7:ffffed68 r6:c061e7cc r5:c00423ac r4:c061e780 [<c00c72a4>] (handle_fasteoi_irq+0x0/0x124) from [<c00c4258>] (generic_handle_irq+0x30/0x38) r7:ffffed68 r6:c0618000 r5:ffffee38 r4:0000008d [<c00c4228>] (generic_handle_irq+0x0/0x38) from [<c004241c>] (asm_do_IRQ+0x64/0xe0) r5:ffffee38 r4:c00423ac [<c00423b8>] (asm_do_IRQ+0x0/0xe0) from [<c0048bc0>] (__irq_svc+0x80/0x14c) Exception stack(0xc0619ed0 to 0xc0619f18) Signed-off-by: Seungwon Jeon <tgih.jun@samsung.com> Acked-by: Will Newton <will.newton@imgtec.com> Cc: stable <stable@vger.kernel.org> Signed-off-by: Chris Ball <cjb@laptop.org>
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@ -22,7 +22,6 @@
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#include <linux/ioport.h>
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#include <linux/module.h>
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#include <linux/platform_device.h>
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#include <linux/scatterlist.h>
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#include <linux/seq_file.h>
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#include <linux/slab.h>
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#include <linux/stat.h>
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@ -502,8 +501,14 @@ static void dw_mci_submit_data(struct dw_mci *host, struct mmc_data *data)
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host->dir_status = DW_MCI_SEND_STATUS;
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if (dw_mci_submit_data_dma(host, data)) {
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int flags = SG_MITER_ATOMIC;
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if (host->data->flags & MMC_DATA_READ)
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flags |= SG_MITER_TO_SG;
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else
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flags |= SG_MITER_FROM_SG;
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sg_miter_start(&host->sg_miter, data->sg, data->sg_len, flags);
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host->sg = data->sg;
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host->pio_offset = 0;
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host->part_buf_start = 0;
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host->part_buf_count = 0;
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@ -972,6 +977,7 @@ static void dw_mci_tasklet_func(unsigned long priv)
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* generates a block interrupt, hence setting
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* the scatter-gather pointer to NULL.
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*/
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sg_miter_stop(&host->sg_miter);
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host->sg = NULL;
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ctrl = mci_readl(host, CTRL);
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ctrl |= SDMMC_CTRL_FIFO_RESET;
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@ -1311,54 +1317,44 @@ static void dw_mci_pull_data(struct dw_mci *host, void *buf, int cnt)
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static void dw_mci_read_data_pio(struct dw_mci *host)
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{
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struct scatterlist *sg = host->sg;
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void *buf = sg_virt(sg);
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unsigned int offset = host->pio_offset;
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struct sg_mapping_iter *sg_miter = &host->sg_miter;
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void *buf;
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unsigned int offset;
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struct mmc_data *data = host->data;
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int shift = host->data_shift;
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u32 status;
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unsigned int nbytes = 0, len;
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unsigned int remain, fcnt;
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do {
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len = host->part_buf_count +
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(SDMMC_GET_FCNT(mci_readl(host, STATUS)) << shift);
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if (offset + len <= sg->length) {
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dw_mci_pull_data(host, (void *)(buf + offset), len);
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if (!sg_miter_next(sg_miter))
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goto done;
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host->sg = sg_miter->__sg;
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buf = sg_miter->addr;
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remain = sg_miter->length;
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offset = 0;
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do {
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fcnt = (SDMMC_GET_FCNT(mci_readl(host, STATUS))
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<< shift) + host->part_buf_count;
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len = min(remain, fcnt);
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if (!len)
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break;
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dw_mci_pull_data(host, (void *)(buf + offset), len);
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offset += len;
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nbytes += len;
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if (offset == sg->length) {
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flush_dcache_page(sg_page(sg));
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host->sg = sg = sg_next(sg);
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if (!sg)
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goto done;
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offset = 0;
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buf = sg_virt(sg);
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}
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} else {
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unsigned int remaining = sg->length - offset;
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dw_mci_pull_data(host, (void *)(buf + offset),
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remaining);
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nbytes += remaining;
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flush_dcache_page(sg_page(sg));
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host->sg = sg = sg_next(sg);
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if (!sg)
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goto done;
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offset = len - remaining;
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buf = sg_virt(sg);
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dw_mci_pull_data(host, buf, offset);
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nbytes += offset;
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}
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remain -= len;
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} while (remain);
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sg_miter->consumed = offset;
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status = mci_readl(host, MINTSTS);
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mci_writel(host, RINTSTS, SDMMC_INT_RXDR);
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if (status & DW_MCI_DATA_ERROR_FLAGS) {
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host->data_status = status;
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data->bytes_xfered += nbytes;
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sg_miter_stop(sg_miter);
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host->sg = NULL;
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smp_wmb();
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set_bit(EVENT_DATA_ERROR, &host->pending_events);
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@ -1367,65 +1363,66 @@ static void dw_mci_read_data_pio(struct dw_mci *host)
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return;
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}
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} while (status & SDMMC_INT_RXDR); /*if the RXDR is ready read again*/
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host->pio_offset = offset;
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data->bytes_xfered += nbytes;
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if (!remain) {
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if (!sg_miter_next(sg_miter))
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goto done;
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sg_miter->consumed = 0;
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}
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sg_miter_stop(sg_miter);
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return;
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done:
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data->bytes_xfered += nbytes;
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sg_miter_stop(sg_miter);
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host->sg = NULL;
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smp_wmb();
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set_bit(EVENT_XFER_COMPLETE, &host->pending_events);
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}
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static void dw_mci_write_data_pio(struct dw_mci *host)
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{
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struct scatterlist *sg = host->sg;
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void *buf = sg_virt(sg);
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unsigned int offset = host->pio_offset;
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struct sg_mapping_iter *sg_miter = &host->sg_miter;
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void *buf;
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unsigned int offset;
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struct mmc_data *data = host->data;
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int shift = host->data_shift;
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u32 status;
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unsigned int nbytes = 0, len;
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unsigned int fifo_depth = host->fifo_depth;
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unsigned int remain, fcnt;
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do {
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len = ((host->fifo_depth -
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SDMMC_GET_FCNT(mci_readl(host, STATUS))) << shift)
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- host->part_buf_count;
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if (offset + len <= sg->length) {
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host->push_data(host, (void *)(buf + offset), len);
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if (!sg_miter_next(sg_miter))
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goto done;
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host->sg = sg_miter->__sg;
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buf = sg_miter->addr;
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remain = sg_miter->length;
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offset = 0;
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do {
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fcnt = ((fifo_depth -
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SDMMC_GET_FCNT(mci_readl(host, STATUS)))
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<< shift) - host->part_buf_count;
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len = min(remain, fcnt);
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if (!len)
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break;
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host->push_data(host, (void *)(buf + offset), len);
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offset += len;
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nbytes += len;
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if (offset == sg->length) {
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host->sg = sg = sg_next(sg);
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if (!sg)
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goto done;
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offset = 0;
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buf = sg_virt(sg);
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}
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} else {
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unsigned int remaining = sg->length - offset;
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host->push_data(host, (void *)(buf + offset),
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remaining);
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nbytes += remaining;
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host->sg = sg = sg_next(sg);
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if (!sg)
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goto done;
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offset = len - remaining;
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buf = sg_virt(sg);
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host->push_data(host, (void *)buf, offset);
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nbytes += offset;
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}
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remain -= len;
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} while (remain);
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sg_miter->consumed = offset;
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status = mci_readl(host, MINTSTS);
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mci_writel(host, RINTSTS, SDMMC_INT_TXDR);
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if (status & DW_MCI_DATA_ERROR_FLAGS) {
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host->data_status = status;
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data->bytes_xfered += nbytes;
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sg_miter_stop(sg_miter);
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host->sg = NULL;
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smp_wmb();
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@ -1435,12 +1432,20 @@ static void dw_mci_write_data_pio(struct dw_mci *host)
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return;
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}
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} while (status & SDMMC_INT_TXDR); /* if TXDR write again */
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host->pio_offset = offset;
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data->bytes_xfered += nbytes;
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if (!remain) {
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if (!sg_miter_next(sg_miter))
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goto done;
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sg_miter->consumed = 0;
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}
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sg_miter_stop(sg_miter);
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return;
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done:
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data->bytes_xfered += nbytes;
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sg_miter_stop(sg_miter);
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host->sg = NULL;
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smp_wmb();
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set_bit(EVENT_XFER_COMPLETE, &host->pending_events);
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}
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@ -1643,6 +1648,7 @@ static void dw_mci_work_routine_card(struct work_struct *work)
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* block interrupt, hence setting the
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* scatter-gather pointer to NULL.
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*/
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sg_miter_stop(&host->sg_miter);
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host->sg = NULL;
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ctrl = mci_readl(host, CTRL);
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@ -14,6 +14,8 @@
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#ifndef LINUX_MMC_DW_MMC_H
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#define LINUX_MMC_DW_MMC_H
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#include <linux/scatterlist.h>
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#define MAX_MCI_SLOTS 2
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enum dw_mci_state {
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* @lock: Spinlock protecting the queue and associated data.
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* @regs: Pointer to MMIO registers.
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* @sg: Scatterlist entry currently being processed by PIO code, if any.
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* @pio_offset: Offset into the current scatterlist entry.
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* @sg_miter: PIO mapping scatterlist iterator.
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* @cur_slot: The slot which is currently using the controller.
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* @mrq: The request currently being processed on @cur_slot,
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* or NULL if the controller is idle.
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@ -115,7 +117,7 @@ struct dw_mci {
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void __iomem *regs;
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struct scatterlist *sg;
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unsigned int pio_offset;
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struct sg_mapping_iter sg_miter;
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struct dw_mci_slot *cur_slot;
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struct mmc_request *mrq;
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